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EP0795977A2 - Method of transmitting an ADSL signal simultaneously with an ISDN signal - Google Patents

Method of transmitting an ADSL signal simultaneously with an ISDN signal
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Publication number
EP0795977A2
EP0795977A2EP97103327AEP97103327AEP0795977A2EP 0795977 A2EP0795977 A2EP 0795977A2EP 97103327 AEP97103327 AEP 97103327AEP 97103327 AEP97103327 AEP 97103327AEP 0795977 A2EP0795977 A2EP 0795977A2
Authority
EP
European Patent Office
Prior art keywords
signal
output
frequency
adsl
frequency content
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
EP97103327A
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German (de)
French (fr)
Other versions
EP0795977B1 (en
EP0795977A3 (en
Inventor
Mathew A. Rybicki
Michael R. May
Matthew A. Pendleton
Terance L. Johnson
Peter R. Molnar
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NXP USA Inc
Original Assignee
Motorola Inc
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Publication date
Application filed by Motorola IncfiledCriticalMotorola Inc
Publication of EP0795977A2publicationCriticalpatent/EP0795977A2/en
Publication of EP0795977A3publicationCriticalpatent/EP0795977A3/en
Application grantedgrantedCritical
Publication of EP0795977B1publicationCriticalpatent/EP0795977B1/en
Anticipated expirationlegal-statusCritical
Expired - Lifetimelegal-statusCriticalCurrent

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Abstract

A flexible asymmetrical digital subscriber line (ADSL) transmitter is able to operate simultaneously with integrated services digital network (ISDN) terminal equipment (TE) using a common telephone line (18). The ADSL transmitter changes the frequency content of a frequency-encoded ADSL signal (104) so that its frequency content does not overlap the frequency content of the ISDN TE signal. A corresponding ADSL receiver located within a central office (CO) adapts to the changed frequency content, allowing the ADSL signal to be transmitted over the telephone line without substantial loss of signal integrity. In one embodiment, an ADSL transmitter (100) converts ADSL symbols making up the frequency-encoded ADSL signal (104) into a corresponding time domain signal. The transmitter (100) then interpolates the time domain signal and high pass filters the interpolated signal. This high pass filtered signal is then converted to analog form, bandpass filtered, and driven onto the telephone line (18).

Description

Claims (10)

  1. An asymmetric digital subscriber line (ADSL) transmitter (100) for transmitting an upstream signal from a remote terminal (RT) (32) to a central office (CO) (40) via a telephone line (18), and adapted for use with a signal source (38) simultaneously conducting a signal with a first frequency content via the telephone line (18), comprising:
    a frequency-to-time converter (106) having an input for receiving a frequency-encoded ADSL data signal (104), and an output for providing a processed signal (108) with a second frequency content;
    an interpolator (110) having an input coupled to said output of said frequency-to-time converter (106), and an output for providing an interpolated output signal (112) with a third frequency content;
    a high pass filter (114) having an input coupled to said output of said interpolator (110), and an output for providing a high pass filtered output signal (116) with a fourth frequency content, a cutoff frequency of said high pass filter (114) being above said first frequency content;
    a digital-to-analog converter (DAC) (118) having an input coupled to said output of said high pass filter (114), and an output; and
    a bandpass filter (122) having an input coupled to said output of said DAC (118), and an output coupled to the telephone line (18) for providing the upstream signal with a fifth frequency content;
    wherein the upstream signal is representative of said frequency-encoded ADSL data signal (104) but has said fifth frequency content, and said fifth frequency content and said first frequency content are substantially nonoverlaping.
  2. An asymmetric digital subscriber line (ADSL) transmitter (130) for transmitting an upstream signal from a remote terminal (RT) (32) to a central office (CO) (40) via a telephone line (18), and adapted for use with a signal source (38) simultaneously conducting a signal with a first frequency content via the telephone line (18), comprising:
    a frequency-to-time converter (106) having an input for receiving a frequency-encoded ADSL data signal (104), and an output for providing a processed signal (108) with a second frequency content;
    an interpolator (110) having an input coupled to said output of said frequency-to-time converter (106), and an output for providing an interpolated output signal (112) with a third frequency content;
    a low pass filter (132) having an input coupled to said output of said interpolator (110), and an output for providing a low pass filtered output signal (134) with a fourth frequency content, a cutoff frequency of said low pass filter (132) being above said second frequency content;
    a multiplier (135) having a first input coupled to said output of said low pass filter (132), a second input for receiving a mixing signal, and an output (136);
    a digital-to-analog converter (DAC) (118) having an input coupled to said output of said multiplier (135), and an output; and
    a bandpass filter (122) having an input coupled to said output of said DAC (118), and an output coupled to the telephone line (18) for providing the upstream signal having a fifth frequency content,
    wherein said upstream signal is representative of said frequency-encoded ADSL data signal (104) but has said fifth frequency content.
  3. An asymmetric digital subscriber line (ADSL) transmitter (140) for transmitting an upstream signal from a remote terminal (RT) (32) to a central office (CO) (40) via a telephone line (18), and adapted for use with a signal source (38) simultaneously conducting a signal with a first frequency content via the telephone line (18), comprising:
    an frequency-to-time converter (106) having an input for receiving a frequency-encoded ADSL data signal (104), and an output for providing a processed signal (108) with a second frequency content;
    an interpolator (110) having an input coupled to said output of said frequency-to-time converter (106), and an output for providing an interpolated output signal (112) with a third frequency content;
    a digital-to-analog converter (DAC) (142) having an input coupled to said output of said interpolator (110), and an output; and
    a bandpass filter (144) having an input coupled to said output of said DAC (142), and an output coupled to the telephone line (18) for providing the upstream signal with a fourth frequency content, said bandpass filter (144) having a low frequency cutoff above said first frequency content,
    wherein the upstream signal is representative of said frequency-encoded ADSL data signal (104) but has said fourth frequency content.
  4. An asymmetric digital subscriber line (ADSL) transmitter (150) for transmitting an upstream signal from a remote terminal (RT) (32) to a central office (CO) (40) via a telephone line (18), and adapted for use with a signal source (38) simultaneously conducting a signal with a first frequency content via the telephone line (18), comprising:
    a frequency-to-time converter (152) having a first input for receiving said frequency-encoded ADSL data signal, and an output for providing a processed signal (153) having a data rate which is an integer multiple of a data rate of said frequency-encoded ADSL data signal (104), said processed signal (153) having a third frequency content;
    a digital-to-analog converter (DAC) (154) having an input coupled to said output of said frequency-to-time converter (152), and an output; and
    a bandpass filter (158) having an input coupled to said output of said DAC (154), and an output coupled to the telephone line (18) for providing the upstream signal with a fourth frequency content, said bandpass filter (158) having a low frequency cutoff above said first frequency content,
    wherein the upstream signal is representative of said frequency-encoded ADSL data signal (104) but has said fourth frequency content.
  5. In an asymmetric digital subscriber line (ADSL) transmitter (100), a method for allowing a second signal source (38) providing a signal with a first frequency content, to simultaneously use a telephone line (18), comprising the steps of:
    receiving a frequency-encoded ADSL data signal (104);
    converting (106) said frequency-encoded ADSL data signal (104) into a time domain signal (108) having a second frequency content substantially according to American National Standards Institute (ANSI) Standard ANS T1.43, wherein said second frequency content overlaps said first frequency content;
    changing (110/114) said second frequency content into a third frequency content, wherein said third frequency content does not substantially overlap any portion of said first frequency content; and
    transmitting the output signal having said third frequency content on the telephone line.
  6. A remote terminal (RT) (32) for connection to a telephone line (18), comprising:
    a first terminal (104) adapted for being coupled to an asymmetric digital subscriber line (ADSL) signal source (11) having a first frequency content;
    a second terminal adapted for being coupled to a second signal source (38) having a second frequency content, wherein said second frequency content overlaps a portion of said first frequency content; and
    a transmitter (106/110/142/144) coupled to said first terminal (104), wherein said transmitter (106/110/142/144) changes said first frequency content into a third frequency content, wherein said third frequency content does not substantially overlap any portion of said second frequency content,
    wherein said ADSL signal source (11) and said second signal source (38) may simultaneously utilize the telephone line (18).
EP97103327A1996-03-151997-02-28Method of transmitting an ADSL signal simultaneously with an ISDN signalExpired - LifetimeEP0795977B1 (en)

Applications Claiming Priority (2)

Application NumberPriority DateFiling DateTitle
US08/616,819US5781728A (en)1996-03-151996-03-15Flexible asymmetrical digital subscriber line ADSL transmitter, remote terminal using same, and method therefor
US6168191996-03-15

Publications (3)

Publication NumberPublication Date
EP0795977A2true EP0795977A2 (en)1997-09-17
EP0795977A3 EP0795977A3 (en)1999-08-11
EP0795977B1 EP0795977B1 (en)2008-09-03

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Family Applications (1)

Application NumberTitlePriority DateFiling Date
EP97103327AExpired - LifetimeEP0795977B1 (en)1996-03-151997-02-28Method of transmitting an ADSL signal simultaneously with an ISDN signal

Country Status (4)

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US (1)US5781728A (en)
EP (1)EP0795977B1 (en)
JP (1)JP3871392B2 (en)
DE (1)DE69738952D1 (en)

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US6477249B1 (en)1997-12-092002-11-05Nortel Networks LimitedCommunications signal splitter and filter
US6507585B1 (en)1998-05-272003-01-143Com CorporationMulti-carrier LAN adapter device using frequency domain equalizer
US6546056B1 (en)1999-05-282003-04-083Com CorporationTiming recovery in a multi-tone modem
US6603811B1 (en)1998-05-292003-08-053Com CorporationLow complexity frequency domain equalizer having fast re-lock
US6704317B1 (en)1998-05-272004-03-093Com CorporationMulti-carrier LAN modem server
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Cited By (19)

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US6477249B1 (en)1997-12-092002-11-05Nortel Networks LimitedCommunications signal splitter and filter
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EP1003320A4 (en)*1998-04-242002-08-28Mitsubishi Electric Corp DATA COMMUNICATION APPARATUS
US6704317B1 (en)1998-05-272004-03-093Com CorporationMulti-carrier LAN modem server
US6891887B1 (en)1998-05-272005-05-103Com CorporationMulti-carrier LAN adapter device using interpolative equalizer
US6507585B1 (en)1998-05-272003-01-143Com CorporationMulti-carrier LAN adapter device using frequency domain equalizer
US6603811B1 (en)1998-05-292003-08-053Com CorporationLow complexity frequency domain equalizer having fast re-lock
US6377683B1 (en)1998-05-292002-04-233Com CorporationLow complexity frequency domain echo canceller for DMT transceivers
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WO2000019767A3 (en)*1998-09-302001-03-22Siemens AgLine terminator unit for a subscriber line
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US6546056B1 (en)1999-05-282003-04-083Com CorporationTiming recovery in a multi-tone modem
WO2002037818A1 (en)*2000-10-302002-05-10Telefonaktiebolaget Lm Ericsson (Publ)Arrangement and method for providing broadband data communication access and narrowband telecommunication access through a pstn/isdn
EP1571818A3 (en)*2004-03-032006-05-17DeTeWe Systems GmbHTelecommunication device
EP1705703A3 (en)*2005-03-222010-05-19Sychip Inc.Cellular and Wi-Fi communication devices integrated with a thin-film passive-component filter on an insulating substrate

Also Published As

Publication numberPublication date
JP3871392B2 (en)2007-01-24
JPH09275387A (en)1997-10-21
DE69738952D1 (en)2008-10-16
HK1002675A1 (en)1998-09-11
EP0795977B1 (en)2008-09-03
US5781728A (en)1998-07-14
EP0795977A3 (en)1999-08-11

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